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Recessive variants in ZNF142 cause a complex neurodevelopmental disorder with intellectual disability, speech impairment, seizures, and dystonia

PURPOSE: The purpose of this study was to expand the genetic architecture of neurodevelopmental disorders, and to characterize the clinical features of a novel cohort of affected individuals with variants in ZNF142, a C(2)H(2) domain-containing transcription factor. METHODS: Four independent researc...

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Autores principales: Khan, Kamal, Zech, Michael, Morgan, Angela T., Amor, David J., Skorvanek, Matej, Khan, Tahir N., Hildebrand, Michael S., Jackson, Victoria E., Scerri, Thomas S., Coleman, Matthew, Rigbye, Kristin A., Scheffer, Ingrid E., Bahlo, Melanie, Wagner, Matias, Lam, Daniel D., Berutti, Riccardo, Havránková, Petra, Fečíková, Anna, Strom, Tim M., Han, Vladimir, Dosekova, Petra, Gdovinova, Zuzana, Laccone, Franco, Jameel, Muhammad, Mooney, Marie R., Baig, Shahid M., Jech, Robert, Davis, Erica E., Katsanis, Nicholas, Winkelmann, Juliane
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6821592/
https://www.ncbi.nlm.nih.gov/pubmed/31036918
http://dx.doi.org/10.1038/s41436-019-0523-0
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author Khan, Kamal
Zech, Michael
Morgan, Angela T.
Amor, David J.
Skorvanek, Matej
Khan, Tahir N.
Hildebrand, Michael S.
Jackson, Victoria E.
Scerri, Thomas S.
Coleman, Matthew
Rigbye, Kristin A.
Scheffer, Ingrid E.
Bahlo, Melanie
Wagner, Matias
Lam, Daniel D.
Berutti, Riccardo
Havránková, Petra
Fečíková, Anna
Strom, Tim M.
Han, Vladimir
Dosekova, Petra
Gdovinova, Zuzana
Laccone, Franco
Jameel, Muhammad
Mooney, Marie R.
Baig, Shahid M.
Jech, Robert
Davis, Erica E.
Katsanis, Nicholas
Winkelmann, Juliane
author_facet Khan, Kamal
Zech, Michael
Morgan, Angela T.
Amor, David J.
Skorvanek, Matej
Khan, Tahir N.
Hildebrand, Michael S.
Jackson, Victoria E.
Scerri, Thomas S.
Coleman, Matthew
Rigbye, Kristin A.
Scheffer, Ingrid E.
Bahlo, Melanie
Wagner, Matias
Lam, Daniel D.
Berutti, Riccardo
Havránková, Petra
Fečíková, Anna
Strom, Tim M.
Han, Vladimir
Dosekova, Petra
Gdovinova, Zuzana
Laccone, Franco
Jameel, Muhammad
Mooney, Marie R.
Baig, Shahid M.
Jech, Robert
Davis, Erica E.
Katsanis, Nicholas
Winkelmann, Juliane
author_sort Khan, Kamal
collection PubMed
description PURPOSE: The purpose of this study was to expand the genetic architecture of neurodevelopmental disorders, and to characterize the clinical features of a novel cohort of affected individuals with variants in ZNF142, a C(2)H(2) domain-containing transcription factor. METHODS: Four independent research centers used exome sequencing to elucidate the genetic basis of neurodevelopmental phenotypes in four unrelated families. Following bioinformatic filtering, query of control datasets, and secondary variant confirmation, we aggregated findings using an online data sharing platform. We performed in-depth clinical phenotyping in all affected individuals. RESULTS: We identified seven affected females in four pedigrees with likely pathogenic variants in ZNF142 that segregate with recessive disease. Affected cases in three families harbor either nonsense or frameshifting likely pathogenic variants predicted to undergo nonsense mediated decay. One additional trio bears ultra-rare missense variants in conserved regions of ZNF142 that are predicted to be damaging to protein function. We performed clinical comparisons across our cohort and noted consistent presence of intellectual disability and speech impairment; with variable manifestation of seizures, tremor and dystonia. CONCLUSIONS: Our aggregate data support a role for ZNF142 in nervous system development and add to the emergent list of zinc finger proteins that contribute to neurocognitive disorders.
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spelling pubmed-68215922019-11-08 Recessive variants in ZNF142 cause a complex neurodevelopmental disorder with intellectual disability, speech impairment, seizures, and dystonia Khan, Kamal Zech, Michael Morgan, Angela T. Amor, David J. Skorvanek, Matej Khan, Tahir N. Hildebrand, Michael S. Jackson, Victoria E. Scerri, Thomas S. Coleman, Matthew Rigbye, Kristin A. Scheffer, Ingrid E. Bahlo, Melanie Wagner, Matias Lam, Daniel D. Berutti, Riccardo Havránková, Petra Fečíková, Anna Strom, Tim M. Han, Vladimir Dosekova, Petra Gdovinova, Zuzana Laccone, Franco Jameel, Muhammad Mooney, Marie R. Baig, Shahid M. Jech, Robert Davis, Erica E. Katsanis, Nicholas Winkelmann, Juliane Genet Med Article PURPOSE: The purpose of this study was to expand the genetic architecture of neurodevelopmental disorders, and to characterize the clinical features of a novel cohort of affected individuals with variants in ZNF142, a C(2)H(2) domain-containing transcription factor. METHODS: Four independent research centers used exome sequencing to elucidate the genetic basis of neurodevelopmental phenotypes in four unrelated families. Following bioinformatic filtering, query of control datasets, and secondary variant confirmation, we aggregated findings using an online data sharing platform. We performed in-depth clinical phenotyping in all affected individuals. RESULTS: We identified seven affected females in four pedigrees with likely pathogenic variants in ZNF142 that segregate with recessive disease. Affected cases in three families harbor either nonsense or frameshifting likely pathogenic variants predicted to undergo nonsense mediated decay. One additional trio bears ultra-rare missense variants in conserved regions of ZNF142 that are predicted to be damaging to protein function. We performed clinical comparisons across our cohort and noted consistent presence of intellectual disability and speech impairment; with variable manifestation of seizures, tremor and dystonia. CONCLUSIONS: Our aggregate data support a role for ZNF142 in nervous system development and add to the emergent list of zinc finger proteins that contribute to neurocognitive disorders. 2019-04-30 2019-11 /pmc/articles/PMC6821592/ /pubmed/31036918 http://dx.doi.org/10.1038/s41436-019-0523-0 Text en http://www.nature.com/authors/editorial_policies/license.html#terms Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Khan, Kamal
Zech, Michael
Morgan, Angela T.
Amor, David J.
Skorvanek, Matej
Khan, Tahir N.
Hildebrand, Michael S.
Jackson, Victoria E.
Scerri, Thomas S.
Coleman, Matthew
Rigbye, Kristin A.
Scheffer, Ingrid E.
Bahlo, Melanie
Wagner, Matias
Lam, Daniel D.
Berutti, Riccardo
Havránková, Petra
Fečíková, Anna
Strom, Tim M.
Han, Vladimir
Dosekova, Petra
Gdovinova, Zuzana
Laccone, Franco
Jameel, Muhammad
Mooney, Marie R.
Baig, Shahid M.
Jech, Robert
Davis, Erica E.
Katsanis, Nicholas
Winkelmann, Juliane
Recessive variants in ZNF142 cause a complex neurodevelopmental disorder with intellectual disability, speech impairment, seizures, and dystonia
title Recessive variants in ZNF142 cause a complex neurodevelopmental disorder with intellectual disability, speech impairment, seizures, and dystonia
title_full Recessive variants in ZNF142 cause a complex neurodevelopmental disorder with intellectual disability, speech impairment, seizures, and dystonia
title_fullStr Recessive variants in ZNF142 cause a complex neurodevelopmental disorder with intellectual disability, speech impairment, seizures, and dystonia
title_full_unstemmed Recessive variants in ZNF142 cause a complex neurodevelopmental disorder with intellectual disability, speech impairment, seizures, and dystonia
title_short Recessive variants in ZNF142 cause a complex neurodevelopmental disorder with intellectual disability, speech impairment, seizures, and dystonia
title_sort recessive variants in znf142 cause a complex neurodevelopmental disorder with intellectual disability, speech impairment, seizures, and dystonia
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6821592/
https://www.ncbi.nlm.nih.gov/pubmed/31036918
http://dx.doi.org/10.1038/s41436-019-0523-0
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